Photosystem II (PSII) uses solar energy to oxidize water and delivers electrons for life on Earth. The photochemical reaction center of PSII is known to possess two stationary states. In the open state (PSIIO), the absorption of a single photon triggers electron-transfer steps, which convert PSII into the charge-separated closed state (PSIIC). Here, by using steady-state and time-resolved spectroscopic techniques on Spinacia oleracea and Thermosynechococcus vulcanus preparations, we show that additional illumination gradually transforms PSIIC into a light-adapted charge-separated state (PSIIL). The PSIIC-to-PSIIL transition, observed at all temperatures between 80 and 308 K, is responsible for a large part of the variable chlorophyll-a fluo...
AbstractWe model the dynamics of energy transfer and primary charge separation in isolated photosyst...
In this chapter we introduce the physical models at the basis of photosynthetic light harvesting and...
In this chapter we introduce the physical models at the basis of photosynthetic light harvesting and...
Photosystem II (PSII) uses solar energy to oxidize water and delivers electrons for life on Earth. T...
Photosystem II (PSII) uses solar energy to oxidize water and delivers electrons for life on Earth. T...
Photosystem II (PSII) uses solar energy to oxidize water and delivers electrons for life on Earth. T...
Rate-limiting steps in the dark-to-light transition of Photosystem II (PSII) were discovered by meas...
Abstract Photosystem II (PSII) catalyses the photoinduced oxygen evolution and, by producing reducin...
Photosystem II (PSII) catalyses the photoinduced oxygen evolution and, by producing reducing equival...
Doctor of PhilosophyDepartment of ChemistryRyszard J. JankowiakThe constituents of oxygen-evolving p...
Doctor of PhilosophyDepartment of ChemistryRyszard J. JankowiakThe constituents of oxygen-evolving p...
X-ray structures of the Photosystem II (PSII) core revealed relatively large interpigment distances ...
ABSTRACT Wemodel the dynamics of energy transfer and primary charge separation in isolated photosyst...
Water oxidation in photosynthesis takes place in photosystem II (PSII). This photosystem is built ar...
ABSTRACT: Although fluorescence is widely used to study photosynthetic systems, the mechanisms that ...
AbstractWe model the dynamics of energy transfer and primary charge separation in isolated photosyst...
In this chapter we introduce the physical models at the basis of photosynthetic light harvesting and...
In this chapter we introduce the physical models at the basis of photosynthetic light harvesting and...
Photosystem II (PSII) uses solar energy to oxidize water and delivers electrons for life on Earth. T...
Photosystem II (PSII) uses solar energy to oxidize water and delivers electrons for life on Earth. T...
Photosystem II (PSII) uses solar energy to oxidize water and delivers electrons for life on Earth. T...
Rate-limiting steps in the dark-to-light transition of Photosystem II (PSII) were discovered by meas...
Abstract Photosystem II (PSII) catalyses the photoinduced oxygen evolution and, by producing reducin...
Photosystem II (PSII) catalyses the photoinduced oxygen evolution and, by producing reducing equival...
Doctor of PhilosophyDepartment of ChemistryRyszard J. JankowiakThe constituents of oxygen-evolving p...
Doctor of PhilosophyDepartment of ChemistryRyszard J. JankowiakThe constituents of oxygen-evolving p...
X-ray structures of the Photosystem II (PSII) core revealed relatively large interpigment distances ...
ABSTRACT Wemodel the dynamics of energy transfer and primary charge separation in isolated photosyst...
Water oxidation in photosynthesis takes place in photosystem II (PSII). This photosystem is built ar...
ABSTRACT: Although fluorescence is widely used to study photosynthetic systems, the mechanisms that ...
AbstractWe model the dynamics of energy transfer and primary charge separation in isolated photosyst...
In this chapter we introduce the physical models at the basis of photosynthetic light harvesting and...
In this chapter we introduce the physical models at the basis of photosynthetic light harvesting and...